4,4'-(9,10-Anthracenediyl)Dibenzaldehyde: Key Intermediate for Advanced Materials

Discover the crucial role of 4,4'-(9,10-Anthracenediyl)Dibenzaldehyde (CAS: 324750-99-4) in the synthesis of Covalent Organic Frameworks (COFs) and Organic Light-Emitting Diodes (OLEDs). As a leading manufacturer and supplier in China, we offer high-purity products to meet your research and development needs.

Get a Quote & Sample

Advantages of Our Dibenzaldehyde Intermediate

Exceptional Purity for Critical Synthesis

Our 4,4'-(9,10-Anthracenediyl)Dibenzaldehyde offers a minimum purity of 97%, which is crucial for complex syntheses such as those required for COFs and high-performance OLED materials. Purchasing from us ensures you receive a product ready for immediate use, reducing downstream purification needs.

Expertise in Organic Synthesis

Leveraging our deep knowledge in organic chemistry, we provide essential intermediates like this dibenzaldehyde. Our capabilities extend to custom synthesis, ensuring we can support your specific project requirements. Partner with us, a dedicated manufacturer, to buy high-quality chemical compounds.

Supports Advanced Material Development

This product is a vital building block for researchers and product developers in the fields of porous materials and optoelectronics. Its unique anthracene-based structure is instrumental in designing materials with specific catalytic or adsorption properties. Consider us your go-to supplier for these advanced chemical needs.

Key Application Areas

Covalent Organic Frameworks (COFs)

The difunctional nature of 4,4'-(9,10-Anthracenediyl)Dibenzaldehyde makes it an excellent monomer for constructing highly ordered porous structures in COFs, enabling applications in gas storage and catalysis.

OLED Materials

As a precursor in OLED technology, this dibenzaldehyde derivative contributes to the development of efficient and stable emissive layers and charge transport materials, crucial for next-generation displays.

Catalysis

The inherent electronic properties of the anthracene core can be harnessed when incorporated into catalytic systems, potentially enhancing reactivity or selectivity for various chemical transformations.

Adsorption and Separation

Materials derived from this intermediate can be designed for selective adsorption and separation processes, finding utility in environmental remediation and chemical purification.